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量子束缚态诱导透明四聚体超表面中的巨强耦合

Giant strong coupling in a Q-BICs' tetramer metasurface.

作者信息

Wang Sheng Yi, Li Wei Yi, Kang Hai Feng, Zhao Wen Kui, Jing Yu Hang, Li Xiang, Ge Hua, Wang Qiu, Jia Bo Wen, Xu Ning

出版信息

Opt Lett. 2024 Aug 1;49(15):4154-4157. doi: 10.1364/OL.533463.

Abstract

Due to their ultrahigh Q-factor and small mode volume, bound states in the continuum (BICs) are intriguing for the fundamental study of the strong coupling regime. However, the strong coupling generated by BICs in one metasurface is not always strong enough, which highly limits its efficiency in applications. In this work, we realize a giant strong coupling of at most 60 meV in a quasi-BICs' (Q-BICs) tetramer metasurface composed of four Si cylinders with two different sets of diagonal lengths. The Q-BICs are induced from two types of electric quadrupole (EQ), for which detuning can be flexibly controlled by manipulating the C symmetry breaking Δd. The giant Rabi splitting in our proposed metasurface performs more than 15 times of the previous works, which provides more possibilities for important nonlinear and quantum applications, such as nanolaser and quantum optics.

摘要

由于其超高的品质因数和小模式体积,连续统中的束缚态(BICs)对于强耦合 regime 的基础研究很有吸引力。然而,一个超表面中由 BICs 产生的强耦合并不总是足够强,这极大地限制了其在应用中的效率。在这项工作中,我们在由四个具有两组不同对角线长度的硅圆柱组成的准 BICs(Q-BICs)四聚体超表面中实现了高达 60 meV 的巨大强耦合。Q-BICs 由两种类型的电四极子(EQ)诱导产生,通过操纵 C 对称性破缺 Δd 可以灵活控制失谐。我们提出的超表面中的巨大拉比分裂比之前的工作高出 15 倍以上,这为重要的非线性和量子应用,如纳米激光器和量子光学,提供了更多可能性。

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